Rchr
J-GLOBAL ID:202301004925298410   Update date: Jun. 15, 2023

Matsuyama Takashi

マツヤマ タカシ | Matsuyama Takashi
Affiliation and department:
Job title: Senior Researcher
Research theme for competitive and other funds  (4):
  • 2015 - 2018 Elucidation of the molecular mechanism of action of the yeast strongest DIT1 terminator and its application
  • 2013 - 2015 Elucidation of the molecular mechanism for highly active terminator regions in Saccharomyces cerevisiae
  • 2005 - 2006 静止菌体で乳酸発酵を行う遺伝子組換え酵母の研究
  • 1998 - 1998 根冠で特異的に発現する遺伝子の解析
Papers (28):
  • Takashi Matsuyama, Shu Saeki, Satoru Kosaka, Yoriko Matsuoka, Yoshifumi Aoki, Yasushi Itoh, Takao Imaeda. Inactivation of SARS-CoV-2 variants by nitrogen-doped titanium dioxide loaded with metals as visible-light photocatalysts. Biotechnology Letters. 2023
  • Takashi Matsuyama, Akira Narita, Masaki Takanashi, Mana Kogure, Shuichi Sato, Tomohiro Nakamura, Hideo Nakane, Soichi Ogishima, Fuji Nagami, Naoki Nakaya, et al. Visualization of estimated prevalence of CES-D positivity accounting for background factors and AIS scores. Scientific Reports. 2022. 12. 1
  • Takashi Matsuyama. Recent developments in terminator technology in Saccharomyces cerevisiae. Journal of bioscience and bioengineering. 2019
  • Ito, Y., Kitagawa, T., Yamanishi, M., Katahira, S., Izawa, S., Irie, K., Furutani-Seiki, M., Matsuyama, T. Enhancement of protein production via the strong DIT1 terminator and two RNA-binding proteins in Saccharomyces cerevisiae. Scientific Reports. 2016. 6
  • Ito, Y., Yamanishi, M., Ikeuchi, A., Matsuyama, T. A highly tunable system for the simultaneous expression of multiple enzymes in Saccharomyces cerevisiae. ACS Synthetic Biology. 2015. 4. 1
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